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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Parametric vibration for electromechanical integrated electrostatic harmonic drive
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Parametric vibration for electromechanical integrated electrostatic harmonic drive

机译:机电集成静电谐波驱动器的参数振动

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In this paper, the electromechanical coupled force between flexible ring and stator of the drive system is presented. The radial displacement of the flexible ring subjected to electric field force is obtained. A critical voltage is found beyond which the flexible ring and the stator will make contact. Considering the ring contacting with the stator as a curved beam fixed at ends, an electromechanical coupled dynamic equation of the drive system is developed. From the equation, the natural frequencies and vibrating modes of the drive system are given. The periodic variable voltage is expressed as disturbance on natural frequency of the drive system and the forced response of the drive system to voltage excitation is investigated. Using Laplace transformation, the forced frequency response of the drive system to voltage excitation is obtained as well. Changes of the forced frequency response along with drive parameters are discussed. Influences of the linear excitation caused by changing boundary angle on the system vibrations are also investigated. The response frequencies are dependent on exciting frequency and natural one. As the exciting frequency is close to the natural frequency of the drive system, the resonance occurs. The flexible ring radius, clearance between the ring and stator, etc. has obvious influences on the frequency responses of the drive system.
机译:本文提出了驱动系统的柔性环与定子之间的机电耦合力。获得了受到电场力作用的挠性环的径向位移。发现一个临界电压,超过该临界电压,柔性环和定子将接触。将与定子接触的环视为固定在端部的弯曲梁,从而开发了驱动系统的机电耦合动力学方程。根据方程式,可以得出驱动系统的固有频率和振动模式。周期性可变电压表示为对驱动系统固有频率的干扰,并研究了驱动系统对电压激励的强制响应。使用拉普拉斯变换,也可以获得驱动系统对电压激励的强制频率响应。讨论了强制频率响应随驱动参数的变化。还研究了由边界角变化引起的线性激励对系统振动的影响。响应频率取决于激励频率和自然频率。由于励磁频率接近驱动系统的固有频率,因此会发生共振。挠性环半径,环与定子之间的间隙等对驱动系统的频率响应有明显的影响。

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